Philipson K D, Nicoll D A
Department of Physiology, UCLA School of Medicine 90095-1760, USA.
Annu Rev Physiol. 2000;62:111-33. doi: 10.1146/annurev.physiol.62.1.111.
Plasma membrane Na(+)-Ca2+ exchange is an essential component of Ca2+ signaling pathways in several tissues. Activity is especially high in the heart where the exchanger is an important regulator of contractility. An expanding exchanger superfamily includes three mammalian Na(+)-Ca2+ exchanger genes and a number of alternative splicing products. New information indicates that the exchanger protein has nine transmembrane segments. The exchanger, which transports Na+ and Ca2+, is also regulated by these substrates. Some molecular information is available on regulation by Na+ and Ca2+ and by PIP2 and phosphorylation. Altered expression of the exchanger in pathophysiological states may contribute to various cardiac phenotypes. Use of transgenic approaches is beginning to improve our knowledge of exchanger function.
质膜钠钙交换体是多种组织中钙信号通路的重要组成部分。在心脏中其活性特别高,该交换体是心肌收缩性的重要调节因子。不断扩展的交换体超家族包括三个哺乳动物钠钙交换体基因以及许多可变剪接产物。新信息表明,交换体蛋白有九个跨膜区段。该交换体可转运钠离子和钙离子,同时也受这些底物的调节。关于钠离子、钙离子、磷脂酰肌醇-4,5-二磷酸(PIP2)和磷酸化调节的一些分子信息已为人所知。在病理生理状态下交换体表达的改变可能导致各种心脏表型。转基因方法的应用正开始增进我们对交换体功能的了解。